Single-Cell Analysis of Chromatin Accessibility in the Human Intestine Identifies Regulatory Programs and Clarifies Genetic Associations in Crohn’s Disease

September 25, 2026·
Yu Zhao
Equal contribution
,
Ran Zhou
Equal contribution
Zepeng Mu
Zepeng Mu
,
Peter Carbonetto
,
Xiaoyuan Zhong
,
Bingqing Xie
,
Kaixuan Luo
,
Candace M Cham
,
Jason Koval
,
Xin He
,
Andrew W Dahl
,
Xuanyao Liu
,
Eugene B Chang
,
Anindita Basu
Corresponding
,
Sebastian Pott
Corresponding
· 0 min read
Abstract
Crohn’s disease is a complex inflammatory bowel disease resulting from an interplay of genetic, microbial and environmental factors. Cell-type-specific contributions to Crohn’s disease etiology and genetic risk are incompletely understood. Here we built a comprehensive atlas of cell-type-resolved chromatin accessibility comprising 557,310 candidate cis-regulatory elements (cCREs) in terminal ileum and ascending colon from 23 patients with active and inactive Crohn’s disease and 16 healthy controls. We identified cell-type-specific, anatomical location-specific and context-specific cCREs and characterized the regulatory programs underlying inflammatory responses in the intestinal mucosa of patients with Crohn’s disease. These cell-type-resolved data confirmed that Crohn’s disease heritability is primarily enriched in adaptive immune cells, in particular T cells, and in innate immune cells, including neutrophils. Using fine-mapped, noncoding Crohn’s disease variants, we identified 30 variants located within cCREs. Our atlas provides a comprehensive resource to study gene-regulatory effects in Crohn’s disease and health and highlights the cellular complexity underlying Crohn’s disease risk.
Type
Publication
Nature Genetics